Engineering
Stainless Steel
100%
Energy Dissipation
83%
Carbon Steel
80%
Finite Element Analysis
66%
Steel Beam
60%
Duplex Stainless Steel
53%
Ductile Fracture
50%
Structural Materials
50%
Environmental Benefit
50%
Economic Benefit
50%
Stability Analysis
50%
Construction Sector
50%
Artificial Intelligence
50%
Comparative Analysis
50%
Sustainable Material
50%
Seismic Performance
50%
Beam-Column
50%
Load Ratio
50%
Ferritic Stainless Steel
43%
Austenitic Stainless Steel
43%
Local Buckling
33%
Yield Point
33%
Hysteresis Loop
33%
Energy Absorption
26%
Failure Mode
26%
Key Parameter
26%
End Moment
16%
Austenitic Grade
16%
Axial Load
16%
Buckling Mode
16%
Seismic Loading
16%
Column Length
16%
Seismic Design
16%
Design Code
16%
Brittleness
16%
Limitations
16%
Taguchi Method
16%
Numerical Model
16%
Critical Application
16%
Load Level
10%
Structural Frames
10%
Axial Stiffness
10%
Beam Behavior
10%
Brittle Failure
10%
Earthquake Resistant Structure
10%
Early Failure
10%
Steel Grade
10%
Finite Element Modeling
10%
Keyphrases
Numerical Investigation
75%
Net-zero Target
50%
Carbon Emissions
50%
Steel Cellular Beams
50%
Cyclic Behavior
50%
H-shaped
50%
Carbon Steel
50%
Stainless Steel Beam
50%
Duplex Stainless Steel
50%
Steel Beam-columns
50%
Energy Dissipation
33%
Ferritic Stainless Steel
33%
Load Ratio
33%
Hysteresis Loop
33%
Local Buckling
33%
Steel-concrete
25%
Structural Stainless Steel
25%
Ductile Fracture
25%
Stability Design
25%
Cementitious Materials
25%
Environmental Benefits
25%
Civil Infrastructure
25%
Sustainable Materials
25%
Environmental Impact
25%
Structural Materials
25%
CO2 Emission Reduction
25%
Reliability Analysis
25%
Construction Method
25%
Stability Analysis
25%
Construction Sector
25%
Infrastructure as a Service
25%
Resilient
25%
Innovative Methods
25%
Economic Benefits
25%
Steel-steel
25%
Comparative Analysis
25%
Austenitic Steel
16%
Failure Mode
16%
Prediction Accuracy
16%
Yield Strength
16%
Energy Absorption
16%
Stiffness
16%
Taguchi Method
16%
Yield Stress
16%
Stainless Steel
16%
Cyclic Performance
16%
Stiffener
16%
Brittleness
16%
Austenitic
16%
Enhanced Energy
16%
Material Science
Stainless Steel
100%
Carbon Steel
100%
Duplex Stainless Steel
66%
Finite Element Method
66%
Building Material
50%
Ductile Fracture
50%
Carbon Dioxide
50%
Cementitious Material
50%
Ferritic Stainless Steel
50%
Austenitic Stainless Steel
50%
Yield Stress
33%
Local Buckling
33%
Material Selection
16%
Finite Element Modeling
16%
Design Standard
16%
Seismic Design
16%
Brittleness
16%
Taguchi Method
16%